ORGANIC COMPOUNDS
[0001] The present invention refers to a novel class of campholitic aldehyde derivatives
and their use as odorants. This invention furthermore relates to a method of their
production and to flavour and fragrance compositions comprising them.
[0002] EP-A-470426,
DD-A-254382,
EP-A-801049 and
EP-A-466019 all describe 2,2,3-trimethylcyclopent-3-ene or 2,2,3-trimethylcyclopentane compounds
with an aldehyde, ketone or alcohol group in the 1-position on the five-membered ring.
[0003] In the fragrance industry there is a constant demand for new compounds that enhance,
modify or improve on odour notes.
[0004] Surprisingly, a new class of compounds, derived from α-campholytic aldehydes, has
been found to possess valuable odour characteristics, which make them useful as fragrance
ingredients. The derivatives of formula (I) as defined hereinunder have odours that
range from floral (rosy), green, fruity to more agrestic, spicy and patchouli, woody.
[0005] Accordingly, the present invention refers in one of its aspects to the use as flavour
or fragrance of a compound of formula (I)
wherein
R4 is hydrogen and the bond between C-3 and C-4 is a single bond or the dotted line
together with the bond between C-3 and C-4 represents a double bond; or R4 is methylene, forming with C-3 and C-4 a cyclopropane ring;
R3 is hydrogen, C1, C2, C3, C4, C5, C6 alkyl (e.g. methyl, ethyl, isobutyl), or C2, C3, C4, C5, C6 alkenyl (e.g. vinyl, propenyl, 3-butenyl); and
- I) R1 and R2 together with the carbon atom to which they are attached form a carbonyl group; or
- II) R1 is hydroxyl and R2 is selected from C1, C2, C3 alkyl (e.g. methyl, ethyl, n-propyl, isopropyl), and C2, C3, C4 alkenyl (e.g. vinyl, isopropenyl, 4-pentenyl).
[0006] The compounds of formula (I) may comprise several chiral centres and as such may
exist as a mixture of stereoisomers, or they may be resolved as isomerically pure
forms. Resolving stereoisomers adds to the complexity of manufacture and purification
of these compounds, and so it is preferred to use the compounds as mixtures of their
stereoisomers simply for economic reasons. However, if it is desired to prepare individual
stereoisomers, this may be achieved according to methods known in the art, e.g. preparative
HPLC and GC, crystallization or by departing from chiral starting materials, e.g.
starting from enantiomerically pure or enriched raw materials such as terpenoids,
and/or by applying stereoselective synthesis.
[0007] Non-limiting examples are compounds of formula (I) wherein R
4 is hydrogen and the dotted line together with the bond between C-3 and C-4 represents
a double bond.
[0008] Particular preferred is the use as flavour or fragrance of a compound of formula
(I), or a mixture thereof selected from 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-one; 2-(2,2,3-trimethylcyclopent-3-enyl)butan-2-ol;
2-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-ol; 3-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-1-ol;
2,2-dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-ol; (E)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-ol;
(Z)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)ethanol; 2-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol; 2-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-one;
3-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-one; 1-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-1-one;
1-(2,2,3-trimethylcyclopent-3-enyl)hept-6-en-1-one; 2,2-dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-one;
(E)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-one; (Z)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-one;
1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-one; 1-(2,2,3-trimethylcyclopent-3-enyl)ethanone;
3-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-3-ol; 2-(2,2,3-trimethylcyclopent-3-enyl)pentan-2-ol;
6-methyl-4-(2,2,3-trimethylcyclopent-3-enyl)hept-1-en-4-ol; 2-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-2-ol;
4-(2,2,3-trimethylcyclopent-3-enyl)oct-7-en-4-ol; 2-(2,2, 3-trimethylcyclopent-3-enyl)oct-7-en-2-ol;
3,3-dimethyl-2-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-2-ol; 3,3-dimethyl-4-(2,2,3-trimethylcyclopent-3-enyl)hepta-1,6-dien-4-ol;
2-(2,2,3-trimethylcyclopent-3-enyl)propan-2-ol; 2,2,3-trimethylcyclopentanecarbaldehyde;
3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-ol; 3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-one;
6-methyl-4-(2,2,3-trimethylcyclopentyl)hept-1-en-4-ol; 2-methyl-1-(2,2,3-trimethylcyclopentyl)prop-2-en-1-ol;
(+)-(1
RS,1'
S,3'
RS)-1-(2',2',3'-trimethylcyclopentyl); 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol;
and 1-(1,2,2-trimethylbicyclo[3.1.0]hex-3-yl)ethanol.
[0009] The compounds according to the present invention may be used alone or in combination
with known fragrances selected from the extensive range of natural and synthetic molecules
currently available, such as essential oils and extracts, alcohols, aldehydes and
ketones, ethers and acetals, esters and lactones, macrocycles and heterocycles.
[0010] In a further embodiment the compounds of formula (I) may be admixed with one or more
ingredients or excipients conventionally used in conjunction with fragrances in fragrance
aplications, for example, carrier materials, and other auxiliary agents, such as solvents
(e.g. dipropyleneglycol (DPG), isopropylmyristate (IPM), triethylcitrate (TEC) and
alcohol (e.g. ethanol)), commonly used in the art.
[0011] The following list comprises examples of known fragrances, which may be combined
with the compounds of the present invention:
- essential oils and extracts, e.g. oak moss absolute, basil oil, tropical fruit oils,
such as bergamot oil and mandarin oil, mastic absolute, myrtle oil, palmarosa oil,
patchouli oil, petitgrain oil, wormwood oil, lavender oil, rose oil, jasmin oil, ylang-ylang
oil and sandalwood oil.
- alcohols, e.g. cis-3-hexenol, cinnamic alcohol, citronellol, Ebanol® (3-methyl-5-(2,2,3-trimethyl-3-cyclopenten-1-yl)-4-penten-2-ol), eugenol, farnesol,
geraniol, menthol, nerol, rhodinol, Super Muguet™ (6-ethyl-3-methyl-6-octen-1-ol), linalool, phenylethyl alcohol, Sandalore® (5-(2,2,3-trimethyl-3-cyclopentenyl)-3-methylpentan-2-ol), terpineol or Timberol® (1-(2,2,6-trimethylcyclohexyl)hexan-3-ol).
- aldehydes and ketones, e.g. citral, hydroxycitronellal, Lilial® (3-(4-tert-butylphenyl)-2-methylpropanal), methylnonylacetaldehyde, anisaldehyde,
allylionone, verbenone, nootkatone, geranylacetone, α-amylcinnamic aldehyde, Georgywood™ (1-(1,2,8,8-tetramethyl-1,2,3,4,5,6,7,8-octahydronaphthalen-2-yl)ethanone), hydroxycitronellal,
Iso E Super® (1-(2,3,8,8-tetramethyl-1,2,3,4,5,6,7,8-octahydronaphthalen-2-yl)ethanone), Isoraldeine® (4-(2,6,6-trimethyl-2-cyclohexenyl)-3-methyl-3-buten-2-one), Hedione® (methyl (3-oxo-2-pentylcyclopentyl)acetate), maltol, methyl cedryl ketone, and vanillin.
- ethers and acetals, e.g. Ambrox® (3a,6,6,9a-tetramethyldodecahydronaphtho[2,1-b]furan), geranyl methyl ether, rose
oxide or Spirambrene (2,2,3',7',7'-pentamethylspiro(1,3-dioxan-5,2'-norcarane)).
- esters and lactones, e.g. benzyl acetate, cedryl actetate, γ-decalactone, Helvetolide® (2-[1-(3,3-dimethylcyclohexyl)ethoxy]-2-methylpropan-1-ol propanoate), γ-undecalactone,
vetivenyl acetate, cinnamyl propionate, citronellyl acetate, decyl acetate, dimethylbenzylcarbinyl
acetate, ethyl acetoacetate, ethyl acetylacetate, cis-3-hexenyl isobutyrate, linalyl
acetate and geranyl acetate.
- macrocycles, e.g. Ambrettolide, Ethylene brassylate or Exaltolide® (oxacyclohexadecan-2-one).
- heterocycles, e.g. isobutylchinoline.
[0012] The compounds of the present invention may be used in a broad range of fragranced
applications, e.g. in any field of fine and functional perfumery, such as perfumes,
household products, laundry products, body care products and cosmetics.
[0013] The compounds of formula (I) can be employed in widely varying amounts, depending
upon the specific application and on the nature of the composition or application
one intends to fragrance, for example the nature and quantity of co-ingredients, and
the particular effect that the perfumer seeks. In general, the proportion is typically
from 0.001 to 20 weight percent of the application. In one embodiment, compounds of
the present invention may be employed in a fabric softener in an amount of from 0.001
to 0.05 weight percent. In another embodiment, compounds of the present invention
may be used in an alcoholic solution in amounts of from 0.1 to 30 weight percent,
more preferably between 1 and 20 weight percent. However, these values are given only
by way of example, since the experienced perfumer may also achieve effects or may
create novel accords with lower or higher concentrations, e.g. up to about 50 weight
percent based on the composition.
[0014] The compounds of the present invention may be employed into a consumer product base
by mixing a compound of formula (I), a mixture thereof or fragrance composition comprising
it, with the consumer product base, and/or they may, in an earlier step, be entrapped
with an entrapment material such as polymers, capsules, microcapsules and nanocapsules,
liposomes, film formers, absorbents such as carbon or zeolites, cyclic oligosaccharides
and mixtures thereof, and/or they may be chemically bonded to substrates, which together
with the substrate forms a precursor, which are adapted to release the compound of
formula (I) upon application of an external stimulus such as light, enzyme, or the
like, and then mixed with the consumer product base.
[0015] The invention additionally provides a method of manufacturing a fragrance application
comprising the incorporation of a compound of formula (I) as fragrance ingredient,
either by admixing the compound to the consumer product base or by admixing a composition
comprising a compound of formula (I) or a precursor thereof, which may then be mixed
to the consumer product base, using conventional techniques and methods. Through the
addition of an organoleptically acceptable amount of a compound of formula (I) or
a mixture thereof, the organoleptic properties of the consumer product base will be
improved, enhanced or modified.
[0016] By "precursors" is meant, in particular, reaction products of the aldehydes / ketones
of formula (I), i.e. compounds of formula (I) wherein R
1 and R
2 together with the carbon atom to which they are attached form a carbonyl group, with
a compound comprising at least one functional group selected from the group of primary
amine, secondary amine, sulfhydryl (thiol), hydroxyl and carboxyl, in which a covalent
bond is formed between at least one carbon atom of the compound of formula (I) and
at least one of the hetero atoms of said compounds comprising at least one functional
group selected from the group of N, S and O.
[0017] The invention furthermore provides a method for improving, enhancing or modifying
a consumer product base by means of the addition thereto of an olfactorily acceptable
amount of a compound of formula (I), or a mixture thereof.
[0018] The invention also provides a fragrance application comprising:
- a) as fragrance a compound of formula (I) or a mixture thereof; and
- b) a consumer product base.
[0019] As used herein, by "consumer product base" is meant a formulation for use as a consumer
product to fulfill specific actions, such as cleaning, softening, and caring or the
like. Examples of such products include fine perfumery, e.g. perfume and eau de toilette;
fabric care, household products and personal care products such as laundry care detergents,
rinse conditioner, personal cleansing products, detergent for dishwasher, surface
cleaner; laundry products, e.g. softener, bleach, detergent; body care products, e.g.
shampoo, shower gel; air care products and cosmetics, e.g. deodorant, and vanishing
crème. This list of products is given by way of illustration and is not to be regarded
as being in any way limiting.
[0020] Most of the compounds of formula (I) are described hereinabove for the first time
and thus are novel in their own right. To the best of our knowledge, among the compounds
of formula (I) only a few are known. 2,2,3-Trimethylcyclopent-3-enecarbaldehyde was
found in traces in juniperberry oil (
Lamparsky et al., Parfuemerie und Kosmetik (1985), 66(9), 553-6, 558-60). 2,2,3-Trimethylcyclopentanecarbaldehyde is mentioned as an intermediate by
M.B. Rubin and A.L. Gutman in Journal of Organic Chemistry (1986), 51(13), 2511 -5. 1-(2,2,3-Trimethylcyclopent-3-enyl)ethanol is mentioned as an intermediate in
WO 2008/046239. However, no odour properties are disclosed.
[0021] Thus, the present invention refers in a further aspect to compounds of formula (I)
wherein
R4 is hydrogen and the bond between C-3 and C-4 is a single bond or the dotted line
together with the bond between C-3 and C-4 represents a double bond; or R4 is methylene, forming with C-3 and C-4 a cyclopropane ring;
R3 is hydrogen, C1, C2, C3, C4, C5, C6 alkyl (e.g. methyl, ethyl, isobutyl), or C2, C3, C4, C5, C6 alkenyl (e.g. vinyl, propenyl, 3-butenyl); and
- I) R1 and R2 together with the carbon atom to which they are attached form a carbonyl group; or
- II) R1 is hydroxyl and R2 is selected from C1, C2, C3 alkyl (methyl, ethyl, n-propyl, isopropyl), and C2, C3, C4 alkenyl (e.g. vinyl, isopropenyl, 4-pentenyl);
with the proviso that 2,2,3-trimethyl-cyclopent-3-enecarbaldehyde, 2,2,3-trimethylcyclopentanecarbaldehyde,and
1-(2,2,3-trimethylcyclopent-3-enyl)ethanol are excluded.
[0022] The compounds of formula (I) may be prepared starting from the commercially-available
α-campholenic aldehyde of any enantiomeric ratio (pure
(R) or
(S) or any mixture of both enantiomers, e.g. from about 9:1 to about 1:9
(R/
S))
via the corresponding quality of its lower homologue, α-campholytic aldehyde, described
in the literature by
Ch. Chapuis et al., Helvetica Chimica Acta 2006, 89, 2638-2653. The latter may be converted by reaction with Grignard reagents to the corresponding
secondary alcohols, which in turn can be oxidised with pyridinium chlorochromate to
the corresponding ketones. These again can be subjected to a Grignard reaction to
obtain the tertiary alcohols described herein. Alternatively, α-campholytic aldehyde
can be hydrogenated, e.g. under palladium on-carbon catalysis, to obtain the corresponding
saturated derivative, 2,2,3-trimethyl-cyclopentanecarbaldehyde, which can be submitted
to the reaction described above in order to produce the corresponding saturated secondary
or tertiary alcohols or the ketones. Yet another possibility is to cyclopropanate
α-campholytic aldehyde or an alcohol derived therefrom (see above) and submit the
product to the transformation described previously (i.e. Grignard reagent addition
and oxidation of alcohols to the corresponding ketones) under conditions known to
the person skilled in the art.
[0023] Campholytic alcohol is obtainable from α-campholytic aldehyde, e.g. via sodium borohydride
reduction.
[0024] Further particulars as to reaction conditions are provided in the examples.
[0025] The invention is now further described with reference to the following non-limiting
examples. These examples are for the purpose of illustration only and it is understood
that variations and modifications can be made by one skilled in the art.
[0026] All products described in the Examples were obtained starting from commercially-available
qualities of α-campholenic aldehyde of approximately 9:1 or 2:3
(R/
S) enantiomer ratios. Flash chromatography:
Merck silica gel 60 (230 - 400 mesh).
[0027] The reported NMR spectra were measured in CDCl
3; chemical shifts (δ) are reported in ppm downfield from TMS; coupling constants
J in Hz.
Example 1: 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol
[0028] A solution of α-campholytic aldehyde (10 g, 72 mmol, 20.6% ee
(R)) in 11 mL THF is added drop-wise into a cooled, mechanically stirred solution of
ethylmagnesium bromide (40 mL, 87 mmol, 2.2 M in THF) at a rate allowing the mixture
temperature to be kept between -10 °C and 0 °C (ca. 20 min). The resulting solution
is stirred for 2h while the temperature is allowed to warm to 0 °C. The resulting
heterogeneous mixture is quenched with 100 mL of 2M HCl. The aqueous layer is extracted
with MTBE and the combined organic layers are dried over MgSO
4, then evaporated yielding 11.9 g of a yellow liquid (98 % yield). This material can
be purified by distillation or chromatography, but was used directly in the next step.
[0029] Odour description: very natural, agrestic, patchouli, a bit earthy/mossy, fruity
(fenchyl acetate-type), slightly green.
[0030] 1H NMR (400 MHz, CDCl
3) δ 5.26 (broad s, 1H); 3.66 (dt, 8.1, 4.6 Hz, 1H); 2.24 (m, 2H); 1.87 (td, 8.2, 4.8
Hz, 1H); 1.58 (m, 3H); 1.6-1.4 (m, 2H); 1.42 (broad s, 1H); 1.01 (s, 3H); 0.96 (t,
7.3 Hz, 3H); 0.95 (s, 3H).
[0031] 13C NMR (100 MHz, CDCl
3) δ 148.2 (C
IV); 121.8 (CH); 73.4 (CH); 54.3 (CH); 46.7 (C
IV); 30.4 (CH
2); 29.6 (CH
2); 27.0 (CH
3); 20.5 (CH
3); 12.4 (CH
3); 10.3 (CH
3).
[0032] MS (El, m/z) 168 (2, M
+); 150 (16); 135 (18); 121 (100); 107 (18); 95 (88); 79 (14); 67 (20); 59 (16); 55
(16); 41 (23).
Example 2: 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-one
[0033] A solution of the product obtained in example 1 (7.3 g, 43 mmol) in 40 mL DCM is
added drop-wise within 20 min into a magnetically stirred suspension of pyridinium
chlorochromate (10.3 g, 48 mmol) and Celite (10.4 g) in 130 mL DCM at rt. The resulting
brown mixture is stirred at rt for 18 h and filtered through a silica plug. The solvents
are evaporated yielding 6.77 g of a yellow liquid (94% yield). This material can be
purified by distillation or chromatography, but was used directly in the next step.
[0034] Odour description: herbaceous, slightly minty; +4h: green, citrus, herbaceous, floral
[0035] 1H NMR (400 MHz, CDCl
3) δ 5.21 (m, 1 H); 2.94 (t, 8.5 Hz, 1H); 2.7-2.6 (m, 1H); 2.5-2.3 (m, 2H); 2.2-2.1
(m, 1H); 1.57 (m, 3H); 1.22 (s, 3H); 1.03 (t, 7.2 Hz, 3H); 0.78 (s, 3H).
13C NMR (100 MHz, CDCl
3) δ 212.4 (C
IV); 145.6 (C
IV); 121.3 (CH); 61.7 (CH); 48.7 (C
IV); 37.2 (CH
2); 31.5 (CH
2); 27.6 (CH
3); 21.3 (CH
3); 12.1 (CH
3); 7.6 (CH
3).
[0036] MS (EI, m/z) 166 (36, M
+); 151 (11); 137 (25); 123 (35); 109 (45); 93 (17); 79 (17); 67 (35); 57 (100); 41
(22).
Example 3: 2-(2,2,3-trimethylcyclopent-3-enyl)butan-2-ol
[0037] A solution of the product obtained in example 2 (2.3 g, 14 mmol) in 2 mL THF is added
drop-wise into a cooled, magnetically stirred solution of methylmagnesium chloride
(6.4 mL, 18 mmol, 22% in THF) at a rate allowing the mixture temperature to be kept
between -10 °C and 0 °C (ca. 30 min). The resulting solution is stirred for 3.3 h
while the temperature is allowed to warm to 0 °C. The resulting heterogeneous mixture
is quenched with 2M HCl and diluted with MTBE. The aqueous layer is extracted once
with MTBE. The combined organic layers are dried over MgSO
4 and evaporated yielding 2.4 g of a brown liquid (quantitative yield). This material
was purified by chromatography.
[0038] Odour description: earthy, slightly woody, fruity, agrestic, camphoraceous; +4h:
earthy, humus, green; +24h: earthy, green, watery, mossy
[0039] 1H NMR (400 MHz, CDCl
3 δ 5.24 (m, 1H); 2.3-2.2 (m, 1H); 2.2-2.1 (m, 1H); 2.01 (dd, 10.6 8.1 Hz, 1H); 1.64
(q, 7.6 Hz, 2H); 1.55 (m, 3H); 1.17 (s, 3H); 1.15 (s, 3H); 1.07 (s, 3H); 0.93 (t,
7.5 Hz, 3H).
[0040] 13C NMR (100 MHz, CDCl
3) δ 148.3 (C
IV); 121.0 (CH); 75.4 (C
IV); 57.4 (CH); 47.8 (C
IV); 34.7 (CH
2); 31.6 (CH
2); 28.5 (CH
3); 26.0 (CH
3); 21.5 (CH
3); 12.3 (CH
3); 8.2 (CH
3).
[0041] MS (EI, m/z) 167 (1); 164 (8); 153 (5); 149 (3); 135 (28); 109 (10); 95 (68); 73
(100); 55 (33); 43 (64).
Example 4:
[0042] Following the general procedure according to Example 1 the compounds 4.1 to 4.12
(see Table 1) were prepared from α-campholytic aldehyde of approximately 9:1 or 2:3
(R/S) enantiomeric ratios.
Example 5:
[0043] Following the general procedure according to Example 2, the compounds 5.1 to 5.13
(see Table 1) were prepared from the appropriate secondary alcohol obtained as in
Example 4.
Example 6:
[0044] Following the general procedure according to Example 3, the compounds 6.1 to 6.9
(see Table 1) were prepared from the appropriate ketone obtained as in Example 5.
Table 1:
|
|
|
Odour description |
4.1 |
|
MS (El, m/z) 196 (1, M+); 178 (9); 163 (7); 149 (8); 121 (100); 108 (41); 95 (60); 55 (20); 41 (32). |
floral, green; +4h: floral, green, rosy, slightly metallic; +24h: weak, floral, green,
fruity. |
4.2 |
|
MS (El, m/z) 196 (1, M+); 178 (9); 163 (6); 135 (10); 121 (66); 107 (38); 95 (100); 79 (19); 67 (20); 55
(19); 41 (34). |
metallic on top then floral, green, fruity, spicy; +4h: floral, green, slightly fruity,
rosy, soft; +24h: weak, green, floral, slightly fruity, rosy. |
4.3 |
|
MS (El, m/z) 194 (2, M+); 176 (3); 161 (16); 139 (3); 135 (18); 121 (37); 109 (27); 95 (100); 67 (29); 55
(32); 41 (37). |
slightly aromatic, fruity, floral; +4h: fruity, slightly green, balsamic; +24h: weak,
slightly floral, fresh, green. |
4.4 |
|
MS (El, m/z) 222 (1, M'); 204 (7); 189 (4); 175 (3); 161 (5); 147 (8); 135 (8); 121
(73); 108 (26); 95 (100); 79 (19); 67 (25); 55 (34); 41 (39). |
floral, green, weak; +24 weak, floral |
4.5 |
|
MS (El, m/z) 208 (2, M+); 190 (2); 175 (4); 138 (45); 123 (52); 121 (89); 109 (55); 95 (90); 79 (28); 70
(100); 55 (73); 43 (81); 41 (83). |
floral, green, powdery, slightly rosy; +4h: weak, agrestic, slightly minty, woody;
+24h: weak, almost odorless |
4.6* |
|
MS: m/z (%) = 27 (5) [C2H3+], 41 (26) [C3H5], 55 (20) [C4H7+], 71 (45) [C4H6OH+], 79 (19), 95 (16) [C7H11+], 109 (44) [C8H13+], 121 (8) [C9H13+], 147 (21) [M+- H2O - CH3], 162 (12) [M+- H2O], 180 (2) [M+]. |
powdery, reminiscent of Cacao beans, agrestic, green, floral; + 4h: weak, agrestic;
+ 24h: green, floral, a bit sandalwood, |
4.7* |
|
MS: m/z (%) = 27 (5) [C2H3+], 41 (31) [C3H5], 55 (23) [C4H7+], 67 (24), 79 (20), 95 (77) [C7H11+], 105 (19), 121 (100) [M+ - C3H5 - H2O], 139 (19) [M+ - C3H5], 147 (13) [M+ - H2O - CH3], 162 (6) [M+ - H2O], 180 (1) [M+]. |
green, agrestic, fruity; +4h: weak floral, agrestic; +24h: green, floral, fruity |
4.8** |
|
MS: m/z (%) = 27 (5) [C2H3+], 41 (26) [C3H5], 55 (20) [C4H7+], 71 (45) [C4H6OH+], 79 (19), 95 (16) [C7H11+], 109 (44) [C8H13+], 121 (8) [C9H13+], 147 (21) [M+ - H2O - CH3], 162 (12) [M+ - H2O], 180 (2) [M+]. |
green, agrestic, floral; +4h: agrestic; +24h: weak cream |
4.9* |
|
MS: m/z (%) = 41 (9) [C3H5+], 45 (12) [C2H4OH+], 55 (8) [C4H7+], 67 (17) [C5H7+], 79 (9) [C6H7+], 91 (6) [C7H7+], 95 (100) [C7H11+], 105 (3) [C8H9+], 109 (4) [C8H13+], 121 (37) [M+- CH3- H2O], 136 (13) [M+-H2O], 139 (1) [M+-CH3], 154 (4) [M1]. Polarimetry (c 0.96 in EtOH): [α]D22 = + 6.8°, [α]57822 = +7.1°, [α]54622 = +8.2°, [α]43622 = + 14.7°, [α]36522 = +23.3°. |
typical clean patchouli scent, woody-camphoraceous-earthy, with slightly spicy accents
and fruity-green facets, and some reminiscence to borneol. |
4.10** |
|
MS: m/z (%) = 41 (11) [C3H5+], 45 (16) [C2H4OH+], 55 (10) [C4H7+], 67 (18) [C5H7+], 79 (9) [C6H7+], 91 (6) [C7H7+], 95 (100) [C7H11+], 105 (3) [C8H9+], 109 (4) [C8H13+], 121 (35) [M+- CH3- H2O], 136 (12) [M+-H2O], 139 (1) [M+- CH3], 154 (3) [M+]. Polarimetry (c 0.37 in EtOH): [α]D22 = -26.3°, [α]57822 = -27.1°, [α]54622 =-31.1°, [α]43622 = -55.8°, [α]36522 = -94.2°. |
borneol- and patchouli-like note, with woody-earthy aspects |
4.11* |
|
MS: m/z (%) = 27 (6) [C2H3+], 41 (40) [C3H5+], 55 (27) [C4H7+], 67 (52), 71 (28), 79 (22), 95 (100) [C7H11+], 108 (69), 123 (6), 139 (8) [M+ - C3H5], 147 (8) [M+ - CH3 - H2O], 165 (31) [M+ - CH3], 180 (2) [M+]. |
Fruity (pear), agrestic; +4h: agrestic, minty, fruity; +24h: very weak fruity. |
4.12 |
|
MS (EI, m/z) 166 (4, M+); 151 (9); 148 (6); 133 (23); 109 (39); 95 (100); 67 (42); 57 (27); 41 (19). Polarimetry
(c 1.06 in EtOH): [α]D22 = +0.4°, [α]57822 = +0.5°, [α]54622 = +0.6°, [α]43622 = +1.3°, [α]36522 = +2.3° |
patchouli, spicy, anisic, badiane, linear; dry down: camphoraceous, woody, patchouli,
anisic, black licorice, cinnamic, earthy, honey. |
5.1 |
|
MS (EI, m/z) 194 (30, M+); 179 (5); 151 (17); 137 (61); 109 (100); 85 (24); 67 (41); 57(99); 41 (37). |
floral, freesia, green, glycolierral fruity; +4h: floral, green, fruity, linalool-like;
+24 weak floral. |
5.2 |
|
MS (EI, m/z) 194 (36, M+); 179 (13); 151 (30); 137 (36); 109 (55); 85 (61); 79 (19); 67 (31); 57 (100); 41
(43). |
floral, green, rosy; +4h: floral, green, rosy, fruity; +24h: weak floral. |
5.3 |
|
MS (EI, m/z) 192 (29, M+); 177 (13); 149 (11); 137 (17); 109 (41); 93 (16); 83 (21); 79 (18); 67 (29); 55
(100); 41(28). |
sweet, agrestic, green, fruity; +4h: green, agrestic; +24h: weak green. |
5.4 |
|
MS (EI, m/z) 220 (37, M+); 205 (11); 177 (6); 137 (38); 109 (54); 93 (25); 83 (29); 67 (40); 55 (100); 41
(53). |
green, fatty, slightly metallic; +4h: green, lactonic, powdery; +24h: weak, slightly
green, powdery, woody. |
5.5 |
|
MS (EI, m/z) 206 (4, M+); 137 (19); 109 (100); 91 (6); 81 (14); 67 (37); 55 (13); 41 (29). |
aromatic, floral, woody, slightly spicy; +4h: floral, aromatic, slightly calamus,
woody; +24h: weak aromatic. |
5.6* |
|
MS: m/z (%) = 27 (2) [C2H3+], 41 (30) [C3H5+], 55 (10) [C4H7+], 69 (100) [C4H5O+], 79 (15), 93 (13), 109 (21) [C8H13+], 121 (6) [C9H13+], 135 (23) [M+ - C3H7], 163 (24) [M+ - CH3], 178 (31) [M+] |
Green metallic, fruity, agrestic; +4h: weak, fruity, agrestic; +24h: weak fruity. |
5.7** |
|
MS: m/z (%) = 27 (3) [C2H3+], 41 (35) [C3H5+], 51 (3), 55 (15), 67 (46), 69 (26) [C4H5O+], 77 (14), 81 (17), 91 (12), 109 (100) [C8H13+], 137 (35) [C9H13O+], 163 (5) [M+ - CH3], 178 (16) [M+] |
fruity, slightly tobacco-balsamic and powdery, natural, a bit rhubarb |
5.8* |
|
MS: m/z (%) = 27 (3) [C2H3+], 41 (35) [C3H5+], 51 (3), 55 (15), 67 (46), 69 (26) [C4H5O+], 77 (14), 81 (17), 91 (12), 109 (100) [C8H13+], 137 (35) [C9H13O+], 163 (5) [M+ - CH3], 178 (16) [M+] |
fruity, mouthwatering, food-like; +4h: still fruity, plum-fig; +24h: weak fruity.. |
5.9** |
|
MS: m/z (%) = 27 (2) [C2H3+], 41 (30) [C3H5+], 55 (10) [C4H7+], 69 (100) [C4H5O+], 79 (15), 93 (13), 109 (21) [C8H13+], 121 (6) [C9H13+], 135 (23) [M+ - C3H7], 163 (24) [M+ - CH3], 178 (31) [M+] |
fruity, slightly green-metallic; +4h: fruity-green, slightly pineapple; +24h: floral-green,
weak. |
5.10* |
|
MS: m/z (%) = 43 (100) [C2H3O+], 67 (31) [C5H7+], 79 (16) [C6H7+], 91 (14) [C7H7+], 94 (7) [M+- C3H6O+], 95 (38) [C7H11+], 109 (67) [M+-CH3 - CO], 119 (2) [M+- CH3- H2O], 137 (21) [M+ - CH3], 152 (38) [M+]. Polarimetry (c 1.02 in EtOH): [α]D22 = +8.7°, [α]57822 = +9.1 °, [α]54822 +10.2°, [α]43622 = +14.8°, [α]36522 = +8.4°. |
herbaceous, sweet, floral jasmine note, with ethereal, fruity, green-aromatic and
somewhat patchouli-type facets. |
6.1 |
|
MS (EI, m/z) 179 (2); 167 (5); 149 (6); 109 (7); 95 (12); 69 (10); 57 (100); 41 (17). |
fruity, agrestic, slightly metallic; +4h: fruity, agrestic, slightly woody; +24h:
floral, green, fruity. |
6.2 |
|
MS (EI, m/z) 192 (9); 177 (3); 153 (14); 135 (24); 121 (14); 109 (22); 101 (55); 95
(72); 79 (16); 67 (15); 57 (65); 43 (100). |
weak, floral; +4h: weak, herbaceous, green; +24h: weak, slightly herbaceous. |
6.3 |
|
MS (EI, m/z) 218 (1); 195 (4); 179 (5); 177 (5); 137 (3); 121 (7); 109 (11); 95 (16);
85 (100); 69 (17); 57 (85); 41 (35). |
green, herbaceous, slightly fruity; +4h: fruity, metallic, slightly green, floral;
+24h: weak, green, slightly fruity. |
6.4 |
|
MS (EI, m/z) 190 (2); 175 (3); 153 (5); 135 (7); 109 (8); 99 (12); 95 (33); 79 (8);
67 (7); 55 (14); 43 (100). |
earthy, spicy, sweet, green; +4h: earthy, spicy, caryophyllenic, green; +24h: earthy,
floral, watery, green. |
6.5 |
|
MS (EI, m/z) 218 (3); 203 (1); 193 (4); 181 (4); 175 (5); 163 (4); 127 (20); 109 (7);
95 (24); 83 (24); 71 (100); 55 (33); 43 (37). |
slightly agrestic, woody, weak; +4h: weak woody; +24h: weak, slightly woody. |
6.6 |
|
MS (EI, m/z) 218 (6); 203 (3); 175 (2); 161 (1); 153 (11); 135 (29); 127 (4); 109
(29); 95 (47); 79 (11); 67 (14); 55 (24); 43 (100). |
weak, green, earthy; +4h: weak; green; +24h: very weak, green |
6.7 |
|
MS (EI, m/z) 153 (26); 113 (3); 109 (25); 95 (9); 69 (9); 55 (9); 43 (100). |
slightly floral, green, nice floralcy; +4h: weak, green, slightly floral; +24h: weak,
floral, green, fresh. |
6.8 |
|
MS (EI, m/z) 207 (1); 179 (12); 161 (1); 137 (11); 121 (1); 109 (28); 95 (6); 79 (6);
69 (100); 55 (14); 41 (42). |
Green, fatty, fruity; +4h: weak; green, fruity +24h: very weak green. |
6.9* |
|
MS: m/z (%) = 43 (31) [C2H3O+], 59 (100) [C3H6OH+], 67 (13) [C5H7+], 79 (10) [C6H7+], 91 (9) [C7H7+], 95 (83) [C7H11+], 119 (3) [C9H11+], 135 (51) [M+ - H2O - CH3], 150 (16) [M+- H2O], 153 (3) [M+- CH3], 168 (1) [M+]. Polarimetry (c 0.96 in EtOH): [α]D22 = +10.1°, [α]57822 = +10.5°, [α]54622 = +21.1°. [α]43622 = +21.6°, [α]36522 = +35.9°. |
borneol-type, woody-earthy note reminding patchouli oil with additional agrestic,
fresh aromatic and slightly musky accents. |
* 1S, ca. 20%ee ** 1R, ca. 80%ee |
Example 7: 2,2,3-trimethylcyclopentanecarbaldehyde
[0045] To a solution of α-campholytic aldehyde (5 g, 36 mmol, 20.6% ee
(R)) in n-butanol/ethyl acetate (1:1, 36 mL), is added palladium on charcoal (5%, 0.3
g). The mixture is magnetically stired for 18 h under an atmosphere of hydrogen (balloon
fitted), after which GC-monitoring showed the reaction to be virtually completed.
The mixture is filtered through a plug of celite and the filtrate reduced
in vacuo to afford the required 2,2,3-trimethylcyclopentanecarbaldehyde as colourless odoriferous
liquid (5.1 g, quantitative yield, purity >95%). This material was used directly in
the next step.
[0046] 1H NMR (400 MHz, CDCl
3) δ 9.75 (1H, d, 3.5, CHO), 2.39 (dt, 3.5, 9.5, C
1H), 2.08-1.97 (1H, m, CH), 1.92-1.83 (1H, m, CH), 1.76-1.60 (2H, m, 2x CH), 1.41-1.29
(1H, m, CH), 1.16 (3H, s, CH
3), 0.85 (3H, d, 6.5, Me-C
3), 0.72 (3H, s, CH
3).
[0047] 13C NMR (100 MHz, CDCl
3) δ 205.4 (CHO); 62.4 (CH); 46.0 (CH); 44.8 (C
IV); 30.6 (CH
2); 26.6 (CH
3); 21.2 (CH
2); 15.8 (CH
3); 12.7 (CH
3).
[0048] MS (EI, m/z) 140 (8, M
+); 125 (16); 107 (20); 97 (49); 83 (82); 69 (100); 55 (79); 41 (73).
[0049] Odour description: agrestic, camphoraceous, balsamic, fruity, pine.
Example 8: Further compounds
[0050] Following the general procedure according to Example 1, Example 2 or Example 3 the
following compound was prepared from 2,2,3-trimethylcyclopentancarbaldehyde (dihydro-campholyte
aldehyde).
8.1: 3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-ol
[0051] Odour description: agrestic, green
[0052] MS (EI, m/z) 180 (1); 165 (2); 141 (14); 123 (100); 112 (34); 95 (22); 81 (22); 69
(90); 57 (44); 41 (47).
8.2: 3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-one
[0053] Odour description : fruity apple, sparkling, interesting; +4h: fruity, like agrumex,
herbaceous; +24h: weak, fruity apple, agrestic (agrumex).
[0054] MS (EI, m/z) 196 (6, M
+); 178 (8); 139 (28); 126 (9); 111 (100); 96 (17); 85 (44); 69 (89); 57 (64); 41 (49).
8.3: 6-methyl-4-(2,2,3-trimethylcyclopentyl)hept-1-en-4-ol
[0055] Odour description: fruity, green, slightly agrestic; +4h: fruity, green (hexenyl
ester); +24h: weak, fruity, slightly woody, rooty.
[0056] MS (EI, m/z) 220 (2); 197 (14); 179 (9); 139 (20); 127 (13); 111 (63); 95 (18); 85
(100); 69 (40); 57 (63); 55 (46); 41 (49).
8.4 : 2-methyl-1-(2,2,3-trimethylcyclopentyl)prop-2-en-1-ol
[0057] Odour description: fruity, agrestic, floral; +4h: fruity, slightly agrestic, piney,
floral; +24h: fruity, slightly agrestic, spicy, floral.
[0058] MS (EI, m/z) 182 (1, M+); 164 (5); 139 (5); 123 (2); 111 (50); 95 (24); 83 (8); 69
(100); 55 (47); 41 (38); 29 (6).
8.5: (+)-(1RS,1'S,3'RS)-1-(2',2',3'-Trimethylcyclopentyl)ethanol (ca. 20%ee)
[0059] Odour description: Piney, fruity, agrestic (borneol), woody, patchouli (but not so
earthy), a bit spicy, resinous (sprouce).
[0060] IR (neat): v = 3357 (br. s, vO-H), 1468/1455 (m, δ
asCH
3), 1372/1366 (s, δ
sCH
3), 1145/1126/1024 (s,
vC-O).
[0061] 1H NMR (CDCl
3): δ = 0.64-1.25 (several s and d, 12 H, 1-Me, 2'-Me
2, 3'-Me), 1.05-1.25 (m
c, 1H, 4'-H), 1.41-1.86 (m
c, 5H, 1'-H, 3'-H, 4'-H, 5'-H
2), 3.64-3.97 (4 m
c, 1H, 1-H).
13C NMR (CDCl
3): δ = 13.2-16.5 (several q, 2Me), 23.1/23.2/25.0/27.5 (4t, C-4'), 23.6-27.8 (several
q, 2Me), 27.8/29.6/31.5/31.6 (4t, C-5'), 41.6/41.8/41.9/42.4 (4s, C-2'), 44.8/44.8/45.7/45.7
(4d, C-4'), 55.0/55.8/57.4/57.8 (4d, C-1'), 68.2/68.7/70.0/70.5 (4d, C-1).
[0062] MS (EI):
m/
z (%) = 41 (50) [C
3H
5+], 45 (42) [C
2H
4OH
1], 55 (62) [C
4H
7+], 69 (100) [C
5H
9+], 81 (22) [C
6H
9+], 91 (6) [C
7H
7+], 95 (38) [C
7H
11+], 112 (21) [C
8H
16+], 123 (27) [M
+- CH
3-H
2O], 138 (11) [M
+- H
2O], 141 (1) [M
+- CH
3], 156 (1) [M
+].
[0063] Polarimetry (c 1.02 in EtOH): [α]
D23 = +0.4°, [α]
57823 = +0.4°, [α]
54623 = +0.5°, [α]
43823 = +1.0°, [α]
36523 = +1.5°
.
8.6: 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol
[0064] Odour description: Very natural, agrestic, patchouli, a bit earthy/mossy, fruity
(fenchyl acetate-type), slightly green.
[0065] 1H NMR (400 MHz, CDCl
3) δ 5.26 (broad s, 1H); 3.66 (dt, 8.1, 4.6 Hz, 1H); 2.24 (m, 2H); 1.87 (td, 8.2, 4.8
Hz, 1H); 1.58 (m, 3H); 1.6-1.4 (m, 2H); 1.42 (broad s, 1H); 1.01 (s, 3H); 0.96 (t,
7.3 Hz, 3H); 0.95 (s, 3H).
[0066] 13C NMR (100 MHz, CDCl
3) δ 148.2 (C
IV); 121.8 (CH); 73.4 (CH); 54.3 (CH); 46.7 (C
IV); 30.4 (CH
2); 29.6 (CH
2); 27.0 (CH
3); 20.5 (CH
3); 12.4 (CH
3); 10.3 (CH
3).
[0067] MS (EI, m/z) 168 (2, M
+); 150 (16); 135 (18); 121 (100); 107 (18); 95 (88); 79 (14); 67 (20); 59 (16); 55
(16); 41 (23).
Example 9: 1-((3S)-1,2,2-trimethylbicyclo[3,1,0]hex-3-yl)ethanol; ca. 20%ee
[0068] A drop of acetyl bromide (1 drop) was added to a mixture of activated (with 1 N HCl)
zinc (19.6 g, 0.3 mol), cuprous bromide (1.5 g, 0.01 mol) and 1-((1
S)-2,2,3-trimethylcyclopent-3-enyl)ethanol (ca. 20%ee, 15.4 g, 0.3 mol) in diethyl
ether (50 ml). After 10 minutes stirring, dibromomethane (52.0 g, 0.3 mol) was added
and stirring at reflux continued for 6 h. The solid was filtered off and washed with
MTBE. The combined organic phases were washed with water and diluted citric acid solution,
dried (MgSO
4), concentrated
in vacuo and distilled using a 5 cm Widmer-column to give 1-((3S)-1,2,2-trimethylbicyclo[3.1.0]hex-3-yl)ethanol
(2.1 g, 12.5% yield, colourless liquid; GC/MS: 3 main diastereomeric pairs of enantiomers
33 + 30.5 + 20%). Analytical samples of the three main pairs of enantiomers were obtained
by flash chromatography (MTBE/hexane 1:3)
[0069] Odour description: agrestic, minty, camphoraceous, woody, slightly patchouli.
[0070] Major diastereoisomer (first eluted):
1H NMR: δ 3.67 (dq,
J = 9.6, 6.1, 1H), 1.57 (dd,
J = 12.0, 7.1, 1H), 1.37 (dt,
J = 11.7, 4.2, 1H), 1.30 (sb, 1H), 1.21-1.15 (m, 1H), 1.11 (d,
J = 6.1, 3H), 1.10 (s, 3H), 1.02 (s, 3H), 0.99-0.94 (m, 1H), 0.97 (s, 3H), 0.42 (t,
J = 4.1, 1H), 0.03 (dd,
J = 7.8, 4.7, 1H).
13C NMR: δ 70.0 (d), 52.0 (d), 41.5 (s), 32.1 (s), 30.6 (t), 25.0 (q), 24.0 (q), 22.4
(d), 19.8 (q), 17.1 (q), 14.1 (t). MS: 153(1), 150(7), 135(56), 122(17), 121(100),
109(67), 107(71), 95(28), 93(29), 91 (25), 83(33), 81 (52), 79(23), 67(43), 55(43),
45(40), 43(50), 41 (43).
[0071] Second major diastereoisomer (second eluted):
1H NMR: δ 3.71 (dq,
J = 6.5, 6.3, 1H). 1.84-1.70 (m, 2H), 1.32 (sb, 1H), 1.20 (d,
J = 6.3, 3H), 1.15 (m, 1H), 1.05-1.00 (m, 1H), 1.02 (s, 3H), 0.97 (s, 3H), 0.87 (s,
3H), 0.74 (t,
J = 4.2, 1H), 0.11 (dd,
J = 7.9, 4.8, 1H).
13C NMR: δ 68.7 (d), 51.7 (d), 41.0 (s), 32.0 (s), 28.6 (t), 23.8 (2q), 22.1 (d), 20.0
(q), 17.1 (q), 14.2 (t). MS: 168(M
+, 0.1), 153(15), 150(7), 135(43), 123(15), 121(100), 109(81), 107(49), 95(31), 93(27),
91 (23), 85(27), 83(53), 81(61), 79(22), 68(32), 67(47), 55(46), 45(46), 43(67), 41
(46).
[0072] Third major diastereoisomer (third eluted):
1H NMR: δ 3.81 (m, 1H), 2.12-2.02 (m, 1H), 1.76-1.67 (m, 2H), 1.27 (sb, 1H), 1.11 (d,
J = 6.3, 3H), 1.05 (s, 3H), 1.05-0.98 (m, 1H), 1.01 (s, 6H), 0.74 (t,
J = 4.0, 1H), 0.11 (ddd,
J = 8.1, 4.3, 1.3, 1H).
13C NMR: δ 67.2 (d), 57.1 (d), 44.3 (s), 33.2 (s), 31.3 (q), 27.2 (t), 25.4 (q), 24.4
(d), 20.8 (q), 18.2 (q), 17.4 (t). MS: 153(6), 150(5), 135(36), 122(12), 121(100),
109(33), 107(39), 95(14), 93(19), 91 (15), 83(24), 81 (30), 67(26), 55(27), 45(25),
43(38), 41 (28).
Example 10: Fougère aromatic green-fruity composition for a shower gel
[0073]
Ingredient |
parts by weight |
Allyl amyl glycolate |
6 |
Ambrofix (dodecahydro-3a,6,6,9a-tetramethyl-naphtho-(2,1-b)-furan) |
2 |
Amyl salicylate |
60 |
Carvone laevo ((R)-2-methyl-5-(prop-1-en-2-yl)cyclohex-2-enone) |
10 |
Cedrylacetate |
40 |
Citronellol |
60 |
Coumarin |
30 |
Dihydro eugenol |
6 |
Dihydro myrcenol (2,6-dimethyloct-7-en-2-ol) |
60 |
Ethyl vanillin at 10% in dipropyleneglycol (DPG) |
2 |
Fenchyl acetate |
30 |
Galaxolide® 50 (1,3,4,6,7,8-hexahydro-4,6,6,7,8,8-hexamethyl-cyclopenta- |
|
gamma-2-benzopyran) at 50% in isopropylmyristate (IPM) |
100 |
Heliotropine |
10 |
Hexenol-3-cis |
6 |
Hexyl acetate |
12 |
Hexyl cinnamic aldehyde |
100 |
lonone beta |
40 |
Iso E super (1-(2,3,8,8-tetramethyl-1,2,3,4,5,6,7,8-octahydronaphthalen-2-yl)- |
|
ethanone) |
60 |
Labienoxime (2,4,4,7-tetramethyl-6,8-nonadiene-3-one-oxime) |
|
at 1 % in IPM-TEC (isopropylmyristate - triethylcitrate mixture 90/10) |
2 |
Linalool |
160 |
Maltol isobutyrate at 10% in DPG |
4 |
Radjanol (2-ethyl-4-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-l-ol) |
16 |
Stemone® (5-methyl-3-heptanone oxime) |
4 |
Terpinyl acetate (2-(4-methylcyclohex-3-enyl)propan-2-yl acetate) |
80 |
1-(2,2,3-Trimethylcyclopent-3-en-1-yl)ethanol (compound 4.9) |
100 |
|
Total: 1000 |
[0074] This fougére fragrance with a spearmint leaf effect and fruity green undertones in
the direction of apple, provides a green-aromatic freshness to shower gel formulations,
which is greatly enhanced by the patchouli character of 1-(2,2,3-trimethylcyclopent-3-en-1-yl)ethanol.
Incorporation of this new odorant conveys a natural resinous-woody, balsamic character
that enhances the fresh-aromatic theme of the composition without dominating the fragrance
with its patchouli note. 1-(2,2,3-trimethylcyclopent-3-en-1-yl)ethanol also stresses
the fresh eucalyptus and spearmint effect, but most importantly renders it the construction
of a fougére theme possible without incorporation of oak moss. Without the woody-camphoraceous-earthy
patchouli scent of 1-(2,2,3-trimethylcyclopent-3-en-1-yl)ethanol with its slightly
spicy accents and fruity-green facets that idea.
Example 11: Fougère aromatic lavender composition for a masculine eau-de-cologne
[0075]
Ingredient |
Parts by weight |
Agrumex (2-tert-butylcyclohexyl acetate) |
80 |
Allyl amyl glycolate |
6 |
Ambrofix (dodecahydro-3a,6,6,9a-tetramethyl-naphtho-(2,1-b)-furan) |
20 |
Anise oil |
2 |
Bourgeonal T (3-(4-tert-butylphenyl)propanal) |
6 |
Clove bud oil |
2 |
Cyclohexal |
80 |
Damascenone (1-(2,6,6-trimethylcyclohexa-1,3-dienyl)but-2-en-1-one) |
|
at 10% in dipropyleneglycol (DPG) |
4 |
Dimethyl phenyl ethyl carbinol (2-methyl-4-phenyl-2-butanol) |
20 |
Fennaldehyde (3-(4-methoxyphenyl)-2-methylpropanal) |
10 |
Fixolide (1-(3,5,5,6,8,8-hexamethyl-5,6,7,8-tetrahydronaphthalen-2-yl)- |
|
ethanone) |
120 |
Floralozone (3-(4-ethylphenyl)-2,2-dimethylpropanal) |
2 |
Hedione® HC (methyl 2-(3-oxo-2-pentylcyclopentyl)acetate) |
160 |
Hexenol-3-cis |
4 |
Irone alpha (4-(2,5,6,6-tetramethylcyclohex-2-enyl)but-3-en-2-one) |
2 |
Iso E super (1-(2,3,8,8-tetramethyl-1,2,3,4,5,6,7,8-octahydronaphthalen-2-yl)- |
|
ethanone) |
120 |
Lavender oil |
80 |
Lemon oil |
40 |
Liffarome ((Z)-hex-3-enyl methyl carbonate) |
2 |
Ligustral (2,4-dimethylcyclohex-3-enecarbaldehyde) |
2 |
Mandarin oil |
14 |
Methyl cedryl ketone |
80 |
Radjanol (2-ethyl-4-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-ol) |
20 |
Spearmint oil |
2 |
Tropional (3-(benzo[d][1,3]dioxol-5-yl)-2-methylpropanal) |
30 |
Vanillin |
2 |
1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol |
90 |
|
Total: 1000 |
[0076] This composition presents a fresh cologne character with a particular emphasis on
a true natural lavender effect. The lavender is blended with a rich woody ambery and
powdery background, while the heart is a soft floral with watery connotations. 1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol
(Ex. 4.12) brings an agrestic patchouli character to the composition. It enhances
also the crisp and natural feeling while improving the lift and freshness.
1. The use as flavour or fragrance of a compound of formula (I)
wherein
R4 is hydrogen and the bond between C-3 and C-4 is a single bond or the dotted line
together with the bond between C-3 and C-4 represents a double bond; or
R4 is methylene, forming with C-3 and C-4 a cyclopropane ring;
R3 is hydrogen, C1, C2, C3, C4, C5, C6 alkyl, or C2, C3, C4, C5, C6 alkenyl; and
I) R1 and R2 together with the carbon atom to which they are attached form a carbonyl group; or
II) R1 is hydroxyl and R2 is selected from C1, C2, C3 alkyl, and C2, C3, C4 alkenyl.
2. The use according to claim 1 wherein R4 of the compound of formula (I) is hydrogen and the dotted line together with the
bond between C-3 and C-4 represents a double bond.
3. The use according to claim 1 wherein the compound of formula (I) is selected from
1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-one;
2-(2,2,3-trimethylcyclopent-3-enyl)butan-2-ol; 2-methyl-1-(2,2,3-trimethyl-cyclopent-3-enyl)butan-1-ol;
3-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-1-ol; 2,2-dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-ol;
(E)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-ol; (Z)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-ol;
1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)ethanol;
2-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol; 1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol;
2-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-one; 3-methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-one;
1-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-1-one; 1-(2,2,3-trimethylcyclopent-3-enyl)hept-6-en-1-one;
2,2-dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-one; (E)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-one;
(Z)-1-(2,2,3-trimethylcyclopent-3-enyl)but-2-en-1-one; 1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-one;
1-(2,2,3-trimethylcyclopent-3-enyl)ethanone; 3-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-3-ol;
2-(2,2,3-trimethylcyclopent-3-enyl)pentan-2-ol; 6-methyl-4-(2,2,3-trimethylcyclopent-3-enyl)hept-1-en-4-ol;
2-(2,2,3-trimethylcyclopent-3-enyl)hex-5-en-2-ol; 4-(2,2,3-trimethylcyclopent-3-enyl)oct-7-en-4-ol;
2-(2,2,3-trimethylcyclopent-3-enyl)oct-7-en-2-ol; 3,3-dimethyl-2-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-2-ol;
3,3-dimethyl-4-(2,2,3-trimethylcyclopent-3-enyl)hepta-1,6-dien-4-ol; 2-(2,2,3-trimethylcyclopent-3-enyl)propan-2-ol;
2,2,3-trimethylcyclopentanecarbaldehyde; 3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-ol;
3-methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-one; 6-methyl-4-(2,2,3-trimethylcyclopentyl)hept-1-en-4-ol
; 2-methyl-1-(2,2,3-trimethylcyclopentyl)prop-2-en-1-ol; (+)-(1RS,1'S,3'RS)-1-(2',2',3'-trimethylcyclopentyl); 1-(2,2,3-trimethylcyclopent-3-enyl)propan-1-ol;
and 1-(1,2,2-trimethylbicyclo[3.1.0]hex-3-yl)ethanol.
4. A method of improving, enhancing or modifying a fragrance application through addition
thereto of an olfactory acceptable amount of a compound of formula (I) as defined
in claim 1, or a mixture thereof.
5. A fragrance application comprising as fragrance a compound of formula (I) as defined
in claim 1, or a mixture thereof; and a consumer product base.
6. A fragrance application according to claim 4 wherein the consumer product base is
selected from fine fragrances, household products, laundry products, body care products,
cosmetic and air-care products.
7. A compound of formula (I)
wherein
R4 is hydrogen and the bond between C-3 and C-4 is a single bond or the dotted line
together with the bond between C-3 and C-4 represents a double bond; or
R4 is methylene, forming with C-3 and C-4 a cyclopropane ring;
R3 is hydrogen, C1, C2, C3, C4, C5, C6 alkyl, or C2, C3, C4, C5, C6 alkenyl; and
I) R1 and R2 together with the carbon atom to which they are attached form a carbonyl group; or
II) R1 is hydroxyl and R2 is selected from C1, C2, C3 alkyl, and C2, C3, C4 alkenyl;
with the proviso that 2,2,3-trimethyl-cyclopent-3-enecarbaldehyde, 2,2,3-trimethylcyclopentanecarbaldehyde,
and 1-(2,2,3-trimethylcyclopent-3-enyl)ethanol are excluded.
1. Verwendung einer Verbindung der Formel (I)
worin
R4 für Wasserstoff steht und die Bindung zwischen C-3 und C-4 eine Einfachbindung ist
oder die gestrichelte Linie zusammen mit der Bindung zwischen C-3 und C-4 eine Doppelbindung
darstellt; oder
R4 für Methylen steht und mit C-3 und C-4 einen Cyclopropanring bildet;
R3 für Wasserstoff, C1-, C2-, C3-, C4-, C5-, C6-Alkyl oder C2-, C3-, C4-, C5-, C6-Alkenyl steht und
I) R1 und R2 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, eine Carbonylgruppe bilden
oder
II) R1 für Hydroxyl steht und R2 unter C1-, C2-, C3-Alkyl und C2-, C3-, C4-Alkenyl ausgewählt ist;
als Geschmacksstoff oder Duftstoff.
2. Verwendung nach Anspruch 1, wobei R4 der Verbindung der Formel (I) für Wasserstoff steht und die gestrichelte Linie zusammen
mit der Bindung zwischen C-3 und C-4 eine Doppelbindung darstellt.
3. Verwendung nach Anspruch 1, wobei die Verbindung der Formel (I) unter 1-(2,2,3-Trimethylcyclopent-3-enyl)propan-1-ol;
1-(2,2,3-Trimethylcyclopent-3-enyl)propan-1-on; 2-(2,2,3-Trimethylcyclopent-3-enyl)butan-2-ol;
2-Methyl-1-(2,2,3-trimethyl-cyclopent-3-enyl)butan-1-ol; 3-Methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-ol;
1-(2,2,3-Trimethylcyclopent-3-enyl)pent-4-en-1-ol; 1-(2,2,3-Trimethylcyclopent-3-enyl)hex-5-en-1-ol;
2,2-Dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-ol; (E)-1-(2,2,3-Trimethylcyclo-pent-3-enyl)but-2-en-1-ol;
(Z)-1-(2,2,3-Trimethyl-cyclopent-3-enyl)but-2-en-1-ol; 1-(2,2,3-Trimethylcyclopent-3-enyl)but-3-en-1-ol;
1-(2,2,3-Trimethylcyclopent-3-enyl)ethanol; 2-Methyl-1-(2,2,3-trimethylcyclopent-3-enyl)prop-2-en-1-ol;
1-(2,2,3-Trimethylcyclopent-3-enyl)prop-2-en-1-ol; 2-Methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-on;
3-Methyl-1-(2,2,3-trimethylcyclopent-3-enyl)butan-1-on; 1-(2,2,3-Trimethylcyclopent-3-enyl)pent-4-en-1-on;
1-(2,2,3-Trimethylcyclopent-3-enyl)hept-6-en-1-on; 2,2-Dimethyl-1-(2,2,3-trimethylcyclopent-3-enyl)but-3-en-1-on;
(E)-1-(2,2,3-Trimethylcyclopent-3-enyl)but-2-en-1-on; (Z)-1-(2,2,3-Trimethylcyclopent-3-enyl)but-2-en-1-on;
1-(2,2,3-Trimethylcyclopent-3-enyl)but-3-en-1-on; 1-(2,2,3-Trimethylcyclopent-3-enyl)ethanon;
3-(2,2,3-Trimethylcyclopent-3-enyl)hex-5-en-3-ol; 2-(2,2,3-Trimethylcyclopent-3-enyl)pentan-2-ol;
6-Methyl-4-(2,2,3-trimethylcyclopent-3-enyl)hept-1-en-4-ol; 2-(2,2,3-Trimethylcyclopent-3-enyl)hex-5-en-2-ol;
4-(2,2,3-Trimethylcyclopent-3-enyl)oct-7-en-4-ol; 2-(2,2,3-Trimethylcyclopent-3-enyl)oct-7-en-2-ol;
3,3-Dimethyl-2-(2,2,3-trimethylcyclopent-3-enyl)pent-4-en-2-ol; 3,3-Dimethyl-4-(2,2,3-trimethylcyclopent-3-enyl)hepta-1,6-dien-4-ol;
2-(2,2,3-Trimethylcyclopent-3-enyl)propan-2-ol; 2,2,3-Trimethylcyclopentancarbaldehyd;
3-Methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-ol; 3-Methyl-1-(2,2,3-trimethylcyclopentyl)butan-1-on;
6-Methyl-4-(2,2,3-trimethylcyclopentyl)hept-1-en-4-ol; 2-Methyl-1-(2,2,3-trimethylcyclopentyl)prop-2-en-1-ol;
(+)-(1RS,1'S,3'RS)-1-(2',2',3'-Trimethylcyclopentyl); 1-(2,2,3-Trimethylcyclopent-3-enyl)-propan-1-ol
und 1-(1,2,2-Trimethylbicyclo[3.1.0]-hex-3-yl)ethanol ausgewählt ist.
4. Verfahren zur Verbesserung, Verstärkung oder Modifizierung einer Duftstoffanwendung
durch Zugabe einer olfaktorisch annehmbaren Menge einer Verbindung der Formel (I)
gemäß Anspruch 1 oder einer Mischung davon.
5. Duftstoffanwendung, umfassend eine Verbindung der Formel (I) gemäß Anspruch 1 oder
eine Mischung davon als Odorans und eine Konsumproduktbasis.
6. Duftstoffanwendung nach Anspruch 4, wobei die Konsumproduktbasis unter Feinduftstoffen,
Haushaltsprodukten, Waschmittelprodukten, Körperpflegeprodukten, Kosmetika und Luftbehandlungsprodukten
ausgewählt ist.
7. Verbindung der Formel (I)
worin
R4 für Wasserstoff steht und die Bindung zwischen C-3 und C-4 eine Einfachbindung ist
oder die gestrichelte Linie zusammen mit der Bindung zwischen C-3 und C-4 eine Doppelbindung
darstellt; oder
R4 für Methylen steht und mit C-3 und C-4 einen Cyclopropanring bildet;
R3 für Wasserstoff, C1-, C2-, C3-, C4-, C5-, C6-Alkyl oder C2-, C3-, C4-, C5-, C6-Alkenyl steht und
I) R1 und R2 zusammen mit dem Kohlenstoffatom, an das sie gebunden sind, eine Carbonylgruppe bilden
oder
II) R1 für Hydroxyl steht und R2 unter C1-, C2-, C3-Alkyl und C2-, C3-, C4-Alkenyl ausgewählt ist;
mit der Maßgabe, daß 2,2,3-Trimethylcyclopent-3-en-carbaldehyd, 2,2,3-Trimethylcyclopentancarbaldehyd
und 1(2,2,3-Trimethylcyclopent-3-enyl)-ethanol ausgeschlossen sind.
1. Utilisation, en tant qu'arôme ou parfum, d'un composé de formule (I)
dans laquelle
R4 est hydrogène et la liaison entre C-3 et C-4 est une simple liaison ou la ligne en
pointillés conjointement avec la liaison entre C-3 et C-4 représente une double liaison
; ou
R4 est méthylène, formant avec C-3 et C-4 un cycle cyclopropane ;
R3 est hydrogène, alkyle en C1, C2, C3, C4, C5, C6 ou alcényle en C2, C3, C4, C5, C6 ; et
I) R1 et R2 conjointement avec l'atome de carbone auquel ils sont liés forment un groupement
carbonyle ; ou
II) R1 est hydroxyle et R2 est choisi parmi alkyle en C1, C2, C3 et alcényle en C2, C3, C4.
2. Utilisation selon la revendication 1, caractérisée en ce que R4 du composé de formule (I) est hydrogène et la ligne en pointillés conjointement avec
la liaison entre C-3 et C-4 représente une double liaison.
3. Utilisation selon la revendication 1, caractérisée en ce que le composé de formule (I) est choisi parmi le 1-(2,2,3-triméthylcyclopent-3-ényl)propan-1-ol
; la 1-(2,2,3-triméthylcyclopent-3-ényl)propan-1-one ; le 2-(2,2,3-triméthylcyclopent-3-ényl)butan-2-ol
; le 2-méthyl-1-(2,2,3-triméthyl-cyclopent-3-ényl)butan-1-ol ; le 3-méthyl-1-(2,2,3-triméthylcyclopent-3-ényl)butan-1-ol
; le 1-(2,2,3-triméthylcyclopent-3-ényl)pent-4-én-1-ol ; le 1-(2,2,3-triméthylcyclopent-3-ényl)hex-5-én-1-ol
; le 2,2-diméthyl-1-(2,2,3-triméthylcyclopent-3-ényl)but-3-én-1-ol ; le (E)-1-(2,2,3-triméthylcyclopent-3-ényl)but-2-én-1-ol
; le (Z)-1-(2,2,3-triméthylcyclopent-3-ényl)but-2-én-1-ol ; le 1-(2,2,3-triméthylcyclopent-3-ényl)but-3-én-1-ol
; le 1-(2,2,3-triméthylcyclopent-3-ényl)éthanol ; le 2-méthyl-1-(2,2,3-triméthylcyclopent-3-ényl)prop-2-én-1-ol
; le 1-(2,2,3-triméthylcyclopent-3-ényl)prop-2-én-1-ol ; la 2-méthyl-1-(2,2,3-triméthylcyclopent-3-ényl)butan-1-one
; la 3-méthyl-1-(2,2,3-triméthylcyclopent-3-ényl)butan-1-one ; la 1-(2,2,3-triméthylcyclopent-3-ényl)pent-4-én-1-one
; la 1-(2,2,3-triméthylcyclopent-3-ényl)hept-6-én-1-one ; la 2,2-diméthyl-1-(2,2,3-triméthylcyclopent-3-ényl)but-3-én-1-one
; la (E)-1-(2,2,3-triméthylcyclopent-3-ényl)but-2-én-1-one ; la (Z)-1-(2,2,3-triméthylcyclopent-3-ényl)but-2-én-1-one
; la 1-(2,2,3-triméthylcyclopent-3-ényl)but-3-én-1-one ; la 1-(2,2,3-triméthylcyclopent-3-ényl)éthanone
; le 3-(2,2,3-triméthylcyclopent-3-ényl)hex-5-én-3-ol ; le 2-(2,2,3-triméthylcyclopent-3-ényl)pentan-2-ol
; le 6-méthyl-4-(2,2,3-triméthylcyclopent-3-ényl)hept-1-én-4-ol ; le 2-(2,2,3-triméthylcyclopent-3-ényl)hex-5-én-2-ol
; le 4-(2,2,3-triméthylcyclopent-3-ényl)oct-7-én-4-ol ; le 2-(2,2,3-triméthylcyclopent-3-ényl)oct-7-én-2-ol
; le 3,3-diméthyl-2-(2,2,3-triméthylcyclopent-3-ényl)pent-4-én-2-ol ; le 3,3-diméthyl-4-(2,2,3-triméthylcyclopent-3-ényl)hepta-1,6-dién-4-ol
; le 2-(2,2,3-triméthylcyclopent-3-ényl)propan-2-ol ; le 2,2,3-triméthylcyclopentanecarbaldéhyde
; le 3-méthyl-1-(2,2,3-triméthylcyclopentyl)butan-1-ol; la 3-méthyl-1-(2,2,3-triméthylcyclopentyl)butan-1-one
; le 6-méthyl-4-(2,2,3-triméthylcyclopentyl)hept-1-én-4-ol ; le 2-méthyl-1-(2,2,3-triméthylcyclopenlyl)prop-2-én-1-ol
; le (+)-(1RS,1'S,3'RS)-1-(2',2',3'-triméthylcyclopentyl) ; le 1-(2,2,3-triméthylcyclopent-3-ényl)propan-1-ol
; et le 1-(1,2,2-triméthylbicyclo[3,1,0]hex-3-yl)éthanol.
4. Méthode pour améliorer, augmenter ou modifier une application de parfum par l'addition
à celui-ci d'une quantité acceptable du point de vue olfactif d'un composé de formule
(I) tel que défini dans la revendication 1, ou d'un mélange de celui-ci.
5. Application de parfum comprenant, en tant que parfum, un composé de formule (I) tel
que défini dans la revendication 1, ou un mélange de celui-ci et une base de produit
de consommation.
6. Application de parfum selon la revendication 4, caractérisée en ce que la base de produit de consommation est choisie parmi les parfums fins, les produits
domestiques, les lessives, les produits d'hygiène corporelle, les produits cosmétiques
et d'ambiance.
7. Composé de formule (I)
dans laquelle
R4 est hydrogène et la liaison entre C-3 et C-4 est une simple liaison ou la ligne en
pointillés conjointement avec la liaison entre C-3 et C-4 représente une double liaison
; ou
R4 est méthylène, formant avec C-3 et C-4 un cycle cyclopropane ;
R3 est hydrogène, alkyle en C1, C2, C3, C4, C5, C6, ou alcényle en C2, C3, C4, C5, C6 ; et
I) R1 et R2 conjointement avec l'atome de carbone auquel ils sont liés forment un groupement
carbonyle ; ou
II) R1 est hydroxyle et R2 est choisi parmi alkyle en C1, C2, C3 et alcényle en C2, C3, C4 ;
à condition que le 2,2,3-triméthyl-cyclopent-3-ènecarbaldéhyde, le 2,2,3-triméthylcyclopentanecarbaldéhyde,
et le 1-(2,2,3-triméthylcyclopent-3-ényl)éthanol soient exclus.